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Confirmation of uncontrolled flow dynamics in clinical simulated multi-infusion setups using absorption spectral photometry

机译:使用吸收光谱光度法确定临床模拟多次输注装置中不可控的流动动力学

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Multi-infusion systems are used frequently at intensive care units to administer several liquid therapeutic agents to patients simultaneously. By passively combining the separate infusion lines in one central line, the number of punctures needed to access the patient's body, is reduced. So far, the mutual influence between the different infusion lines is unknown. Although the flow properties of single infusion systems have been investigated extensively, only a few research groups have investigated the flow properties of multi-infusion systems. We showed in a previous study that applying multi-infusion can lead to fluctuations in syringe pump infusions, resulting in uncontrolled and inaccurate drug administration. This study presents a performance analysis of multi-infusion systems as used in the Neonatology Intensive Care Unit. The dynamics between multiple infusion lines in multi-infusion systems were investigated by simulation experiments of clinical conditions. A newly developed real-time spectral-photometric method was used for the quantitative determination of concentration and outflow volume using a deconvolution method of absorption spectra of mixed fluids. The effects for common clinical interventions were studied in detail. Results showed mutual influence between the different infusion lines following these interventions. This mutual influence led to significant volume fluctuations up to 50%. These deviations could result in clinically dangerous situations. A complete analysis of the multi-infusion system characteristics is recommended in further research to estimate both the presence and severity of potential risks in clinical use.
机译:重症监护室经常使用多次输液系统,以同时向患者施用几种液体治疗剂。通过将单独的输液管线被动地组合在一条中心线上,可以减少进入患者身体所需的穿刺次数。迄今为止,尚不清楚不同输液管线之间的相互影响。尽管已经对单输液系统的流动特性进行了广泛的研究,但只有少数研究小组对多输液系统的流动特性进行了研究。我们在先前的研究中表明,进行多次输注可能会导致注射泵输注出现波动,从而导致药物控制不受控制且不准确。这项研究提出了在新生儿科重症监护病房使用的多输液系统的性能分析。通过临床条件模拟实验研究了多输液系统中多输液管线之间的动力学。使用一种新开发的实时光谱光度法,通过反卷积法对混合流体的吸收光谱进行定量测定浓度和流出量。详细研究了常见临床干预措施的效果。结果表明,在这些干预措施之后,不同输液管线之间存在相互影响。这种相互影响导致明显的音量波动,高达50%。这些偏差可能导致临床危险情况。建议在进一步研究中对多输液系统特性进行完整分析,以估计临床使用中潜在风险的存在和严重性。

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